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Long-Distance Protonation-Conformation Coupling in Phytochrome Species

Phytochromes are biological red/far-red light sensors found in many organisms. The connection between photoconversion and the cellular output signal involves light-mediated global structural changes in the interaction between the photosensory module (PAS-GAF-PHY, PGP) and the C-terminal transmitter...

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Autores principales: Sadeghi, Maryam, Balke, Jens, Rafaluk-Mohr, Timm, Alexiev, Ulrike
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9737838/
https://www.ncbi.nlm.nih.gov/pubmed/36500486
http://dx.doi.org/10.3390/molecules27238395
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author Sadeghi, Maryam
Balke, Jens
Rafaluk-Mohr, Timm
Alexiev, Ulrike
author_facet Sadeghi, Maryam
Balke, Jens
Rafaluk-Mohr, Timm
Alexiev, Ulrike
author_sort Sadeghi, Maryam
collection PubMed
description Phytochromes are biological red/far-red light sensors found in many organisms. The connection between photoconversion and the cellular output signal involves light-mediated global structural changes in the interaction between the photosensory module (PAS-GAF-PHY, PGP) and the C-terminal transmitter (output) module. We recently showed a direct correlation of chromophore deprotonation with pH-dependent conformational changes in the various domains of the prototypical phytochrome Cph1 PGP. These results suggested that the transient phycocyanobilin (PCB) chromophore deprotonation is closely associated with a higher protein mobility both in proximal and distal protein sites, implying a causal relationship that might be important for the global large-scale protein rearrangements. Here, we investigate the prototypical biliverdin (BV)-binding phytochrome Agp1. The structural changes at various positions in Agp1 PGP were investigated as a function of pH using picosecond time-resolved fluorescence anisotropy and site-directed fluorescence labeling of cysteine variants of Agp1 PGP. We show that the direct correlation of chromophore deprotonation with pH-dependent conformational changes does not occur in Agp1. Together with the absence of long-range effects between the PHY domain and chromophore pK(a), in contrast to the findings in Cph1, our results imply phytochrome species-specific correlations between transient chromophore deprotonation and intramolecular signal transduction.
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spelling pubmed-97378382022-12-11 Long-Distance Protonation-Conformation Coupling in Phytochrome Species Sadeghi, Maryam Balke, Jens Rafaluk-Mohr, Timm Alexiev, Ulrike Molecules Article Phytochromes are biological red/far-red light sensors found in many organisms. The connection between photoconversion and the cellular output signal involves light-mediated global structural changes in the interaction between the photosensory module (PAS-GAF-PHY, PGP) and the C-terminal transmitter (output) module. We recently showed a direct correlation of chromophore deprotonation with pH-dependent conformational changes in the various domains of the prototypical phytochrome Cph1 PGP. These results suggested that the transient phycocyanobilin (PCB) chromophore deprotonation is closely associated with a higher protein mobility both in proximal and distal protein sites, implying a causal relationship that might be important for the global large-scale protein rearrangements. Here, we investigate the prototypical biliverdin (BV)-binding phytochrome Agp1. The structural changes at various positions in Agp1 PGP were investigated as a function of pH using picosecond time-resolved fluorescence anisotropy and site-directed fluorescence labeling of cysteine variants of Agp1 PGP. We show that the direct correlation of chromophore deprotonation with pH-dependent conformational changes does not occur in Agp1. Together with the absence of long-range effects between the PHY domain and chromophore pK(a), in contrast to the findings in Cph1, our results imply phytochrome species-specific correlations between transient chromophore deprotonation and intramolecular signal transduction. MDPI 2022-12-01 /pmc/articles/PMC9737838/ /pubmed/36500486 http://dx.doi.org/10.3390/molecules27238395 Text en © 2022 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Sadeghi, Maryam
Balke, Jens
Rafaluk-Mohr, Timm
Alexiev, Ulrike
Long-Distance Protonation-Conformation Coupling in Phytochrome Species
title Long-Distance Protonation-Conformation Coupling in Phytochrome Species
title_full Long-Distance Protonation-Conformation Coupling in Phytochrome Species
title_fullStr Long-Distance Protonation-Conformation Coupling in Phytochrome Species
title_full_unstemmed Long-Distance Protonation-Conformation Coupling in Phytochrome Species
title_short Long-Distance Protonation-Conformation Coupling in Phytochrome Species
title_sort long-distance protonation-conformation coupling in phytochrome species
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9737838/
https://www.ncbi.nlm.nih.gov/pubmed/36500486
http://dx.doi.org/10.3390/molecules27238395
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